Bessette P H, Cotto J J, Gilbert H F, Georgiou G
Department of Chemical Engineering, University of Texas, Austin, Texas 78712, USA.
J Biol Chem. 1999 Mar 19;274(12):7784-92. doi: 10.1074/jbc.274.12.7784.
We have characterized in vivo and in vitro the recently identified DsbG from Escherichia coli. In addition to sharing sequence homology with the thiol disulfide exchange protein DsbC, DsbG likewise was shown to form a stable periplasmic dimer, and it displays an equilibrium constant with glutathione comparable with DsbA and DsbC. DsbG was found to be expressed at approximately 25% the level of DsbC. In contrast to earlier results (Andersen, C. L., Matthey-Dupraz, A., Missiakas, D., and Raina, S. (1997) Mol. Microbiol. 26, 121-132), we showed that dsbG is not essential for growth and that dsbG null mutants display no defect in folding of multiple disulfide-containing heterologous proteins. Overexpression of DsbG, however, was able to restore the ability of dsbC mutants to express heterologous multidisulfide proteins, namely bovine pancreatic trypsin inhibitor, a protein with three disulfides, and to a lesser extent, mouse urokinase (12 disulfides). As in DsbC, the putative active site thiols in DsbG are completely reduced in vivo in a dsbD-dependent fashion, as would be expected if DsbG is acting as a disulfide isomerase or reductase. However, the latter is not likely because DsbG could not catalyze insulin reduction in vitro. Overall, our results indicate that DsbG functions primarily as a periplasmic disulfide isomerase with a narrower substrate specificity than DsbC.
我们已经在体内和体外对最近鉴定出的大肠杆菌DsbG进行了表征。除了与硫醇二硫键交换蛋白DsbC具有序列同源性外,DsbG同样被证明能形成稳定的周质二聚体,并且它与谷胱甘肽的平衡常数与DsbA和DsbC相当。发现DsbG的表达水平约为DsbC的25%。与早期结果(Andersen, C. L., Matthey-Dupraz, A., Missiakas, D., and Raina, S. (1997) Mol. Microbiol. 26, 121 - 132)相反,我们表明dsbG对生长不是必需的,并且dsbG缺失突变体在多种含二硫键的异源蛋白折叠方面没有缺陷。然而,DsbG的过表达能够恢复dsbC突变体表达异源多二硫键蛋白的能力,即牛胰蛋白酶抑制剂(一种含有三个二硫键的蛋白),以及在较小程度上恢复小鼠尿激酶(12个二硫键)的表达能力。与DsbC一样,DsbG中假定的活性位点硫醇在体内以dsbD依赖的方式完全还原,这与如果DsbG作为二硫键异构酶或还原酶起作用时的预期一致。然而,后者不太可能,因为DsbG在体外不能催化胰岛素的还原。总体而言,我们的结果表明DsbG主要作为一种周质二硫键异构酶发挥作用,其底物特异性比DsbC更窄。